Population Density given Sanitary Sewer System Flow Rate Solution

STEP 0: Pre-Calculation Summary
Formula Used
Population Density of Area = Sanitary System Sewer Flow Rate/(Cross Sectional Area*Discharge)
Pd = SSfr/(A*Q)
This formula uses 4 Variables
Variables Used
Population Density of Area - (Measured in Hundred per Square Meter) - Population Density of Area refers to the measurement of the number of people per unit area in a defined geographical area, typically expressed as the number of individuals per square kilometer.
Sanitary System Sewer Flow Rate - (Measured in Cubic Meter per Second) - Sanitary System Sewer Flow Rate is the measure of the volume of wastewater flowing through a sewer system per unit of time.
Cross Sectional Area - (Measured in Square Meter) - Cross Sectional Area is typically determined based on the geometry of the pipe or channel through which the wastewater flows.
Discharge - (Measured in Cubic Meter per Second) - Discharge refers to the volume of wastewater flowing through the sewer system per unit of time. It is usually measured in cubic meters per second (m³/s) or liters per second (L/s).
STEP 1: Convert Input(s) to Base Unit
Sanitary System Sewer Flow Rate: 1.2 Liter per Second --> 0.0012 Cubic Meter per Second (Check conversion ​here)
Cross Sectional Area: 50 Square Meter --> 50 Square Meter No Conversion Required
Discharge: 1.01 Cubic Meter per Second --> 1.01 Cubic Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Pd = SSfr/(A*Q) --> 0.0012/(50*1.01)
Evaluating ... ...
Pd = 2.37623762376238E-05
STEP 3: Convert Result to Output's Unit
2.37623762376238E-05 Hundred per Square Meter -->23.7623762376238 Hundred per Square Kilometer (Check conversion ​here)
FINAL ANSWER
23.7623762376238 23.76238 Hundred per Square Kilometer <-- Population Density of Area
(Calculation completed in 00.008 seconds)

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Meerut Institute of Engineering and Technology (MIET), Meerut
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Sanitary System Sewer Design Calculators

Sanitary Sewer System Flow Rate
​ LaTeX ​ Go Sanitary System Sewer Flow Rate = Cross Sectional Area*Population Density of Area*Discharge
Manning's Formula for Conveyance Factor given Flow Rate through Pipe
​ LaTeX ​ Go Conveyance Factor = Waste Water Flow/sqrt(Hydraulic Gradient)
Flow Rate through Pipe using Manning Formula
​ LaTeX ​ Go Waste Water Flow = Conveyance Factor*(Hydraulic Gradient)^1/2
Manning's Formula for Pipe Slope given Flow Rate through Pipe
​ LaTeX ​ Go Hydraulic Gradient = (Waste Water Flow/Conveyance Factor)^2

Population Density given Sanitary Sewer System Flow Rate Formula

​LaTeX ​Go
Population Density of Area = Sanitary System Sewer Flow Rate/(Cross Sectional Area*Discharge)
Pd = SSfr/(A*Q)

What is Flow Rate?

Flow Rate, also known as discharge, is a measurement of how much fluid (liquid or gas) passes through a given surface per unit of time. It is a crucial parameter in various fields such as fluid dynamics, civil engineering, and environmental science.

How to Calculate Population Density given Sanitary Sewer System Flow Rate?

Population Density given Sanitary Sewer System Flow Rate calculator uses Population Density of Area = Sanitary System Sewer Flow Rate/(Cross Sectional Area*Discharge) to calculate the Population Density of Area, The Population Density given Sanitary Sewer System Flow Rate formula is defined as the measurement of the number of people living in a given unit of area, typically expressed as people per square kilometer (people/km²) or people per square mile (people/mi²). It is a key metric used in demography, urban planning, and geography to understand how population is distributed across a particular region. Population Density of Area is denoted by Pd symbol.

How to calculate Population Density given Sanitary Sewer System Flow Rate using this online calculator? To use this online calculator for Population Density given Sanitary Sewer System Flow Rate, enter Sanitary System Sewer Flow Rate (SSfr), Cross Sectional Area (A) & Discharge (Q) and hit the calculate button. Here is how the Population Density given Sanitary Sewer System Flow Rate calculation can be explained with given input values -> 2.4E+7 = 0.0012/(50*1.01).

FAQ

What is Population Density given Sanitary Sewer System Flow Rate?
The Population Density given Sanitary Sewer System Flow Rate formula is defined as the measurement of the number of people living in a given unit of area, typically expressed as people per square kilometer (people/km²) or people per square mile (people/mi²). It is a key metric used in demography, urban planning, and geography to understand how population is distributed across a particular region and is represented as Pd = SSfr/(A*Q) or Population Density of Area = Sanitary System Sewer Flow Rate/(Cross Sectional Area*Discharge). Sanitary System Sewer Flow Rate is the measure of the volume of wastewater flowing through a sewer system per unit of time, Cross Sectional Area is typically determined based on the geometry of the pipe or channel through which the wastewater flows & Discharge refers to the volume of wastewater flowing through the sewer system per unit of time. It is usually measured in cubic meters per second (m³/s) or liters per second (L/s).
How to calculate Population Density given Sanitary Sewer System Flow Rate?
The Population Density given Sanitary Sewer System Flow Rate formula is defined as the measurement of the number of people living in a given unit of area, typically expressed as people per square kilometer (people/km²) or people per square mile (people/mi²). It is a key metric used in demography, urban planning, and geography to understand how population is distributed across a particular region is calculated using Population Density of Area = Sanitary System Sewer Flow Rate/(Cross Sectional Area*Discharge). To calculate Population Density given Sanitary Sewer System Flow Rate, you need Sanitary System Sewer Flow Rate (SSfr), Cross Sectional Area (A) & Discharge (Q). With our tool, you need to enter the respective value for Sanitary System Sewer Flow Rate, Cross Sectional Area & Discharge and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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